Ashauer Roman, Escher Beate I
Eawag, Swiss Federal Institute of Aquatic Science and Technology, 8600, Dübendorf, Switzerland.
J Environ Monit. 2010 Nov;12(11):2056-61. doi: 10.1039/c0em00234h. Epub 2010 Sep 23.
Toxicokinetic-toxicodynamic (TK-TD) models simulate the processes that lead to toxicity at the level of organisms over time. These dynamic simulation models quantify toxicity, but more importantly they also provide a conceptual framework to better understand the causes for variability in different species' sensitivity to the same compound as well as causes for different toxicity of different compounds to the same species. Thus TK-TD models bring advantages for very diverse ecotoxicological questions as they can address two major challenges: the large number of species that are potentially affected and the large number of chemicals of concern. The first important benefit of TK-TD models is the role that they can play to formalize established knowledge about toxicity of compounds, sensitivity of organisms, organism recovery times and carry-over toxicity. The second important aspect of TK-TD models is their ability to simulate temporal aspects of toxicity which makes them excellent extrapolation tools for risk assessment of fluctuating or pulsed exposures to pollutants. We provide a general introduction to the concept of TK-TD modelling for environmental scientists and discuss opportunities as well as current limitations.
毒代动力学-毒效动力学(TK-TD)模型模拟随着时间推移在生物体水平上导致毒性的过程。这些动态模拟模型量化毒性,但更重要的是,它们还提供了一个概念框架,以更好地理解不同物种对同一化合物敏感性差异的原因,以及不同化合物对同一物种产生不同毒性的原因。因此,TK-TD模型为各种各样的生态毒理学问题带来了优势,因为它们可以应对两个主要挑战:大量可能受到影响的物种和大量令人关注的化学物质。TK-TD模型的第一个重要益处在于它们能够将关于化合物毒性、生物体敏感性、生物体恢复时间和残留毒性的现有知识形式化。TK-TD模型的第二个重要方面是它们模拟毒性时间方面的能力,这使它们成为评估波动或脉冲式接触污染物风险的出色外推工具。我们为环境科学家提供了TK-TD建模概念的概述,并讨论了机会以及当前的局限性。